Producing Steels with Special Properties Using a Jet Heat Treatment System

Article Preview

Abstract:

The prospects of production of special properties steels in the Russian and global metal market are estimated. The necessity of using new types of steels is substantiated. The prospects of introducing steels with special properties developed by PJSC “Magnitogorsk Iron and Steel Company” to the market are determined. Evaluation of measures for the production of large volumes of products showed that there is a problem of a significant increase in the time of manufacturing and delivery of output products to the consumer. As measures to ensure the modernization of the technological complex of the steel enterprise and reduce the time for steel production, the system of jet heat treatment of metal is proposed. According to the results of comparative analysis of the MAGSTRONG H500 and HARDOX 500 alloys used in mining equipment under conditions of increased wear, it was revealed that the proposed method of heat treatment allows one to achieve high wear resistance properties, with high coefficients of tensile strength and toughness.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

30-36

Citation:

Online since:

July 2020

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2020 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] T. Du, T. Shi, Y. Liu, J. Ye bo, Energy consumption and its influencing factors of iron and steel enterprise, Journal of Iron and Steel Research International 20(8) (2013) 8–13.

DOI: 10.1016/s1006-706x(13)60134-x

Google Scholar

[2] A. G. Vorobev, D. V. Timokhin, M. S. Ivanova, G. I. Popova, L. S. Serebryannaya, Innovatization as an instrument of overcoming of competitive lagging of Russian metallurgy from the developing countries, Non-Ferrous Metals 8 (2014) 8–13. (in Russian).

Google Scholar

[3] K. Kawakami, Investigations in innovative steelmaking technologies in Japan: Focused to the metallurgical phenomena stimulating the developments of more high-purity refining of steel and continuation of steelmaking processes, Tetsu-to-Hagane (1986).

DOI: 10.2355/tetsutohagane1955.72.16_2153

Google Scholar

[4] A. S. Smolyakov, S. I. Shakhov, R. Kerimov, Modernization of Baku Steel Company Metallurgical Plant Section CBCM for Producing Round Pipe Billets, Metallurgist 61(7–8) (2017) 543–548. (in Russian).

DOI: 10.1007/s11015-017-0530-9

Google Scholar

[5] V. G. Evstratov, I. Y. Zinurov, Z. K. Shakirov, A. M. Shumakov, N. P. Sharov, V. Z. Feldman, M. T. Gindullin, Modernization of the steelmaking facilities at the Asha Metallurgical Plant, Metallurgist 56(9–10) (2013) 665–669. (in Russian).

DOI: 10.1007/s11015-013-9632-1

Google Scholar

[6] I. V. Butorina, M. V. Butorina, Issues of implementing the best available technologies in the steel industry of the Russian Federation, Ferrous Metals (1) (2019) 43–48. (in Russian).

Google Scholar

[7] L. F. Shaybakova, S. V. Novosyolov, Development of ferrous metallurgy in Russia: Trends, special features and problems, Manager 69(5) (2017) 40–49. (in Russian).

DOI: 10.29141/2218-5003-2017-7-5-6

Google Scholar

[8] P. Crompton, Future trends in Japanese steel consumption, Resources Policy 26(2) (2000) 103–114.

DOI: 10.1016/s0301-4207(00)00020-9

Google Scholar

[9] S. Tao, F. Wang, G. Sun, C. Li, Q. Yan, Effects of heat treatment on transverse and longitudinal mechanical properties of engineering machinery steel WQ960 TMS, Annual Meeting (2014) 191–198.

DOI: 10.1002/9781118888056.ch23

Google Scholar

[10] E. A. Zverev, V. Yu. Skeeba, N. V. Martyushev, P. Yu. Skeeba, Integrated quality ensuring technique of plasma wear resistant coatings, Key Engineering Materials 736 (2017) 132–137.

DOI: 10.4028/www.scientific.net/kem.736.132

Google Scholar

[11] M. Sarvghad, D. Del Aguila, G. Will, Optimized corrosion performance of a carbon steel in dilute sulfuric acid through heat treatment, Applied Surface Science 491 (2019) 460–468.

DOI: 10.1016/j.apsusc.2019.06.180

Google Scholar

[12] K. Peng, C. Kang, G. Li, K. Matsuda, H. Soyama, Effect of heat treatment on the cavitation erosion resistance of stainless steel, Materials and Corrosion 69(4) (2018) 536–544.

DOI: 10.1002/maco.201709818

Google Scholar

[13] S. Arias, J. G. Castano, E. Correa, F. Echeverria, M. Gomez, Effect of heat treatment on tribological properties of Ni-B coatings on low carbon steel: Wear maps and wear mechanisms, Journal of Tribology (2019) 141(9).

DOI: 10.1115/1.4043906

Google Scholar

[14] V. Yu. Skeeba, V. V. Ivancivsky, N. V. Martyushev, D. V. Lobanov, N. V. Vakhrushev, A. K. Zhigulev, Numerical simulation of temperature field in steel under action of electron beam heating source, Key Engineering Materials 712 (2016) 105–111.

DOI: 10.4028/www.scientific.net/kem.712.105

Google Scholar

[15] Y. S. Choi, J. H. Kim, K. Y. Lee, S. H. Yang, Performance improvement of high-speed jet fan, AIP Conference Proceedings (2010) 712–724.

Google Scholar

[16] L. Li, G. Huang, J. Chen, Aerodynamic characteristics of a tip-jet fan with a large blade pitch angle, Aerospace Science and Technology 91 (2019) 49–58.

DOI: 10.1016/j.ast.2019.04.052

Google Scholar

[17] N. V. Martyushev, Alignment of the microstructure of castings from the heterophase lead bronzes, Advanced Materials Research 880 (2014) 163–167.

DOI: 10.4028/www.scientific.net/amr.880.163

Google Scholar

[18] A. Krol, M. Krol, Study on numerical modeling of jet fans, Tunnelling and Underground Space Technology 73 (2018) 222–235.

DOI: 10.1016/j.tust.2017.12.024

Google Scholar

[19] B. N. Abramovich, Uninterruptible power supply system for mining industry enterprises, Journal of mining institute 229 (2018) 31–40.

Google Scholar

[20] A. Zykova, N. Martyushev, V. Skeeba, D. Zadkov, A. Kuzkin, Influence of W addition on microstructure and mechanical properties of Al-12%Si alloys, Materials 12(6) (2019) 981.

DOI: 10.3390/ma12060981

Google Scholar